首页> 外文会议>Annual Meeting amp;amp;amp; Exhibition of The Minerals, Metals amp;amp;amp; Materials Society >HF and SO_2 Multipoint Monitoring on Large Gas Treatment Centers (GTCs) with Prewarning Abilities
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HF and SO_2 Multipoint Monitoring on Large Gas Treatment Centers (GTCs) with Prewarning Abilities

机译:HF和SO_2大型气体处理中心(GTC)的多点监测具有预警能力

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During dry scrubbing, alumina and pot gas are distributed inside the GTC into multiple (typical 10-30) filtering modules where the adsorption of HF takes place on the surface of the alumina. Unintended distribution patterns due to blockages or mechanical failures inside the reactors and filter modules may give too high HF emissions due to oversaturation of the alumina inside the various modules. Although not widely implemented yet, several systems are available today for HF monitoring in individual modules. These systems will be reviewed in this paper. The capabilities of the HF extractive multipoint method are verified with manual measurements on an 18-compartment size GTC in the Middle East. HF molecules have a higher affinity to the alumina surface when compared to SO_2 molecules that are also contained in the pot gas. When HF molecules diffuse to the alumina surface, SO_2 molecules are pushed off because of the weaker bond to the alumina surface. Because of this phenomenon the system is therefore capable of giving off an early warning about 2-3 h ahead before HF emissions start to exceed normal limits when SO_2 concentration monitoring is added to the individual filter modules. This principle is also described in this paper.
机译:在干燥擦洗期间,氧化铝和罐气体在GTC内分布到多个(典型的10-30)过滤模块中,其中HF的吸附在氧化铝的表面上。由于电抗器和滤波器模块内的堵塞或机械故障导致的造成意外的分布模式可能由于各种模块内的氧化铝的过饱和而产生过高的HF排放。虽然没有广泛实现,但今天可以在各个模块中进行几个系统进行HF监控。本文将审查这些系统。 HF提取多点方法的能力通过手动测量在中东的18个隔室大小GTC上进行了验证。与也包含在罐气中的SO_2分子相比,HF分子对氧化铝表面具有更高的亲和力。当HF分子扩散到氧化铝表面时,由于薄荷与氧化铝表面较弱,因此被推断出SO_2分子。由于这种现象,系统能够在HF排放开始超过正常限制之前,在将SO_2浓度监测添加到各个滤波器模块时,该系统能够放弃大约2-3小时。本文还描述了该原理。

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